Quantification of Information Transmission in Signal Play-calling for NCAA Division 1 College Football: A Comprehensive Literature Review

Q3 Health Professions
Michael E. King, Samuel Miller, Reuben F. Burch, W. Reimann, John P. Shalala, A. Piroli, Cory Bichey, Ted Rath
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引用次数: 1

Abstract

Background: To gain a competitive advantage in National Collegiate Athletic Association (NCAA) Division 1 American college football, teams often use a coded, hand/body gesture-based play-calling system to communicate calls to student-athletes on the field. Objective: The purpose of this study is to apply cognitive engineering concepts toward the improvement of signal transmission such that a realistic amount of data signaled will be received and understood by the student-athlete. Methods: Partnering with an NCAA coaching staff, information transmitted via signal-based communication pathways were quantified to inform the design of their signal system. Quality control coaches, practitioners of football signalling characterization and design, used an autoethnographic frame to train researchers on the communication protocol standards. A comprehensive literature review of sources from 1900 to 2019 was conducted to examine information transmission, signal-gesture taxonomies, sign-language recognition, and code design. Findings were applied to the signal system to quantify the information contained in the transmission between the signalling coaches and the student-athletes. Results: Results found that the observed signal system transmits an average of 12.62 bits of information on offense and 12.92 bits on defense with 23% and 12% redundancy, respectively. Conclusion: Recommendations were provided to the coaching staff regarding code optimization and gesture design to improve student-athlete performance.
NCAA第一赛区大学橄榄球赛信号比赛中信息传递的量化:综合文献综述
背景:为了在全美大学体育协会(NCAA)第1级美国大学橄榄球比赛中获得竞争优势,球队经常使用一种编码的、基于手/身体手势的比赛呼叫系统来与赛场上的学生运动员沟通呼叫。目的:本研究的目的是将认知工程概念应用于信号传输的改进,从而使学生运动员能够接收和理解实际数量的数据信号。方法:与NCAA教练组合作,通过基于信号的通信途径传输的信息被量化,以告知他们的信号系统的设计。质量控制教练,足球信号表征和设计的实践者,使用自人种学框架来培训通信协议标准的研究人员。对1900年至2019年的文献资料进行了全面的回顾,以研究信息传递、信号手势分类、手语识别和代码设计。研究结果被应用于信号系统,以量化信号教练和学生运动员之间传递的信息。结果:观察到的信号系统在进攻时平均传输12.62比特,防守时平均传输12.92比特,冗余度分别为23%和12%。结论:为教练组提供了代码优化和手势设计的建议,以提高学生运动员的成绩。
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来源期刊
International Journal of Kinesiology and Sports Science
International Journal of Kinesiology and Sports Science Health Professions-Physical Therapy, Sports Therapy and Rehabilitation
CiteScore
1.80
自引率
0.00%
发文量
7
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